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authorMarek Olšák <[email protected]>2017-06-09 18:46:07 +0200
committerMarek Olšák <[email protected]>2017-06-27 19:55:09 +0200
commit4a10d6154e1a6086e1eecf0e17ab63cc41862ea6 (patch)
treed8166d615f4771bc96147185dc12a52e59776c4a /src/gallium/drivers
parentaef998fe4b7551faf8a44409aa74554b45d2b67c (diff)
radeonsi: move instance divisors into a constant buffer
Shader key size: 107 -> 47 Divisors of 0 and 1 are encoded in the shader key. Greater instance divisors are loaded from a constant buffer. The shader code doing the division is huge. Is it something we need to worry about? Does any app use instance divisors >= 2? VS prolog disassembly: s_load_dwordx4 s[12:15], s[0:1], 0x80 ; C00A0300 00000080 s_nop 0 ; BF800000 s_waitcnt lgkmcnt(0) ; BF8C007F s_buffer_load_dword s14, s[12:15], 0x4 ; C0220386 00000004 s_waitcnt lgkmcnt(0) ; BF8C007F v_cvt_f32_u32_e32 v4, s14 ; 7E080C0E v_rcp_iflag_f32_e32 v4, v4 ; 7E084704 v_mul_f32_e32 v4, 0x4f800000, v4 ; 0A0808FF 4F800000 v_cvt_u32_f32_e32 v4, v4 ; 7E080F04 v_mul_hi_u32 v5, v4, s14 ; D2860005 00001D04 v_mul_lo_i32 v6, v4, s14 ; D2850006 00001D04 v_cmp_eq_u32_e64 s[12:13], 0, v5 ; D0CA000C 00020A80 v_sub_i32_e32 v5, vcc, 0, v6 ; 340A0C80 v_cndmask_b32_e64 v5, v6, v5, s[12:13] ; D1000005 00320B06 v_mul_hi_u32 v5, v5, v4 ; D2860005 00020905 v_add_i32_e32 v6, vcc, v5, v4 ; 320C0905 v_subrev_i32_e32 v4, vcc, v5, v4 ; 36080905 v_cndmask_b32_e64 v4, v4, v6, s[12:13] ; D1000004 00320D04 v_mul_hi_u32 v5, v4, v1 ; D2860005 00020304 v_add_i32_e32 v4, vcc, s8, v0 ; 32080008 v_mul_lo_i32 v6, v5, s14 ; D2850006 00001D05 v_add_i32_e32 v7, vcc, 1, v5 ; 320E0A81 v_cmp_ge_u32_e64 s[12:13], v1, v6 ; D0CE000C 00020D01 v_sub_i32_e32 v6, vcc, v1, v6 ; 340C0D01 v_cmp_le_u32_e32 vcc, s14, v6 ; 7D960C0E v_cndmask_b32_e64 v8, 0, -1, s[12:13] ; D1000008 00318280 v_cndmask_b32_e64 v6, 0, -1, vcc ; D1000006 01A98280 v_and_b32_e32 v6, v8, v6 ; 260C0D08 v_cmp_eq_u32_e32 vcc, 0, v6 ; 7D940C80 v_cndmask_b32_e32 v6, v7, v5, vcc ; 000C0B07 v_add_i32_e32 v5, vcc, -1, v5 ; 320A0AC1 v_cmp_eq_u32_e32 vcc, 0, v8 ; 7D941080 v_cndmask_b32_e32 v5, v6, v5, vcc ; 000A0B06 v_add_i32_e32 v5, vcc, s9, v5 ; 320A0A09 v2: set prefer_mono for fetched instance divisors Reviewed-by: Nicolai Hähnle <[email protected]>
Diffstat (limited to 'src/gallium/drivers')
-rw-r--r--src/gallium/drivers/radeonsi/si_descriptors.c2
-rw-r--r--src/gallium/drivers/radeonsi/si_pipe.c2
-rw-r--r--src/gallium/drivers/radeonsi/si_shader.c78
-rw-r--r--src/gallium/drivers/radeonsi/si_shader.h9
-rw-r--r--src/gallium/drivers/radeonsi/si_state.c15
-rw-r--r--src/gallium/drivers/radeonsi/si_state.h3
-rw-r--r--src/gallium/drivers/radeonsi/si_state_shaders.c12
7 files changed, 93 insertions, 28 deletions
diff --git a/src/gallium/drivers/radeonsi/si_descriptors.c b/src/gallium/drivers/radeonsi/si_descriptors.c
index 75d2a1d86cf..88f7dcee959 100644
--- a/src/gallium/drivers/radeonsi/si_descriptors.c
+++ b/src/gallium/drivers/radeonsi/si_descriptors.c
@@ -2192,6 +2192,8 @@ void si_emit_graphics_shader_userdata(struct si_context *sctx,
R_00B330_SPI_SHADER_USER_DATA_ES_0);
si_emit_shader_pointer(sctx, descs,
R_00B430_SPI_SHADER_USER_DATA_HS_0);
+ si_emit_shader_pointer(sctx, descs,
+ R_00B530_SPI_SHADER_USER_DATA_LS_0);
}
}
diff --git a/src/gallium/drivers/radeonsi/si_pipe.c b/src/gallium/drivers/radeonsi/si_pipe.c
index ff787adcf34..5f3b7e112ce 100644
--- a/src/gallium/drivers/radeonsi/si_pipe.c
+++ b/src/gallium/drivers/radeonsi/si_pipe.c
@@ -308,6 +308,8 @@ static struct pipe_context *si_create_context(struct pipe_screen *screen,
si_set_rw_buffer(sctx, SI_HS_CONST_DEFAULT_TESS_LEVELS,
&sctx->null_const_buf);
+ si_set_rw_buffer(sctx, SI_VS_CONST_INSTANCE_DIVISORS,
+ &sctx->null_const_buf);
si_set_rw_buffer(sctx, SI_VS_CONST_CLIP_PLANES,
&sctx->null_const_buf);
si_set_rw_buffer(sctx, SI_PS_CONST_POLY_STIPPLE,
diff --git a/src/gallium/drivers/radeonsi/si_shader.c b/src/gallium/drivers/radeonsi/si_shader.c
index 42b08bfb845..55d1232512b 100644
--- a/src/gallium/drivers/radeonsi/si_shader.c
+++ b/src/gallium/drivers/radeonsi/si_shader.c
@@ -312,7 +312,7 @@ get_tcs_out_current_patch_data_offset(struct si_shader_context *ctx)
static LLVMValueRef get_instance_index_for_fetch(
struct si_shader_context *ctx,
- unsigned param_start_instance, unsigned divisor)
+ unsigned param_start_instance, LLVMValueRef divisor)
{
struct gallivm_state *gallivm = &ctx->gallivm;
@@ -320,9 +320,8 @@ static LLVMValueRef get_instance_index_for_fetch(
ctx->param_instance_id);
/* The division must be done before START_INSTANCE is added. */
- if (divisor > 1)
- result = LLVMBuildUDiv(gallivm->builder, result,
- LLVMConstInt(ctx->i32, divisor, 0), "");
+ if (divisor != ctx->i32_1)
+ result = LLVMBuildUDiv(gallivm->builder, result, divisor, "");
return LLVMBuildAdd(gallivm->builder, result,
LLVMGetParam(ctx->main_fn, param_start_instance), "");
@@ -5282,12 +5281,10 @@ static void si_dump_shader_key_vs(const struct si_shader_key *key,
const struct si_vs_prolog_bits *prolog,
const char *prefix, FILE *f)
{
- fprintf(f, " %s.instance_divisors = {", prefix);
- for (int i = 0; i < ARRAY_SIZE(prolog->instance_divisors); i++) {
- fprintf(f, !i ? "%u" : ", %u",
- prolog->instance_divisors[i]);
- }
- fprintf(f, "}\n");
+ fprintf(f, " %s.instance_divisor_is_one = %u\n",
+ prefix, prolog->instance_divisor_is_one);
+ fprintf(f, " %s.instance_divisor_is_fetched = %u\n",
+ prefix, prolog->instance_divisor_is_fetched);
fprintf(f, " mono.vs.fix_fetch = {");
for (int i = 0; i < SI_MAX_ATTRIBS; i++)
@@ -5603,10 +5600,12 @@ static void si_get_vs_prolog_key(const struct tgsi_shader_info *info,
key->vs_prolog.num_merged_next_stage_vgprs = 5;
}
- /* Set the instanceID flag. */
- for (unsigned i = 0; i < info->num_inputs; i++)
- if (key->vs_prolog.states.instance_divisors[i])
- shader_out->info.uses_instanceid = true;
+ /* Enable loading the InstanceID VGPR. */
+ uint16_t input_mask = u_bit_consecutive(0, info->num_inputs);
+
+ if ((key->vs_prolog.states.instance_divisor_is_one |
+ key->vs_prolog.states.instance_divisor_is_fetched) & input_mask)
+ shader_out->info.uses_instanceid = true;
}
/**
@@ -6527,6 +6526,21 @@ out:
return result;
}
+static LLVMValueRef si_prolog_get_rw_buffers(struct si_shader_context *ctx)
+{
+ struct gallivm_state *gallivm = &ctx->gallivm;
+ LLVMValueRef ptr[2], list;
+
+ /* Get the pointer to rw buffers. */
+ ptr[0] = LLVMGetParam(ctx->main_fn, SI_SGPR_RW_BUFFERS);
+ ptr[1] = LLVMGetParam(ctx->main_fn, SI_SGPR_RW_BUFFERS_HI);
+ list = lp_build_gather_values(gallivm, ptr, 2);
+ list = LLVMBuildBitCast(gallivm->builder, list, ctx->i64, "");
+ list = LLVMBuildIntToPtr(gallivm->builder, list,
+ si_const_array(ctx->v4i32, SI_NUM_RW_BUFFERS), "");
+ return list;
+}
+
/**
* Build the vertex shader prolog function.
*
@@ -6609,11 +6623,33 @@ static void si_build_vs_prolog_function(struct si_shader_context *ctx,
}
/* Compute vertex load indices from instance divisors. */
+ LLVMValueRef instance_divisor_constbuf = NULL;
+
+ if (key->vs_prolog.states.instance_divisor_is_fetched) {
+ LLVMValueRef list = si_prolog_get_rw_buffers(ctx);
+ LLVMValueRef buf_index =
+ LLVMConstInt(ctx->i32, SI_VS_CONST_INSTANCE_DIVISORS, 0);
+ instance_divisor_constbuf =
+ ac_build_indexed_load_const(&ctx->ac, list, buf_index);
+ }
+
for (i = 0; i <= key->vs_prolog.last_input; i++) {
- unsigned divisor = key->vs_prolog.states.instance_divisors[i];
+ bool divisor_is_one =
+ key->vs_prolog.states.instance_divisor_is_one & (1u << i);
+ bool divisor_is_fetched =
+ key->vs_prolog.states.instance_divisor_is_fetched & (1u << i);
LLVMValueRef index;
- if (divisor) {
+ if (divisor_is_one || divisor_is_fetched) {
+ LLVMValueRef divisor = ctx->i32_1;
+
+ if (divisor_is_fetched) {
+ divisor = buffer_load_const(ctx, instance_divisor_constbuf,
+ LLVMConstInt(ctx->i32, i * 4, 0));
+ divisor = LLVMBuildBitCast(gallivm->builder, divisor,
+ ctx->i32, "");
+ }
+
/* InstanceID / Divisor + StartInstance */
index = get_instance_index_for_fetch(ctx,
user_sgpr_base +
@@ -6866,15 +6902,7 @@ static void si_build_ps_prolog_function(struct si_shader_context *ctx,
/* POS_FIXED_PT is always last. */
unsigned pos = key->ps_prolog.num_input_sgprs +
key->ps_prolog.num_input_vgprs - 1;
- LLVMValueRef ptr[2], list;
-
- /* Get the pointer to rw buffers. */
- ptr[0] = LLVMGetParam(func, SI_SGPR_RW_BUFFERS);
- ptr[1] = LLVMGetParam(func, SI_SGPR_RW_BUFFERS_HI);
- list = lp_build_gather_values(gallivm, ptr, 2);
- list = LLVMBuildBitCast(gallivm->builder, list, ctx->i64, "");
- list = LLVMBuildIntToPtr(gallivm->builder, list,
- si_const_array(ctx->v4i32, SI_NUM_RW_BUFFERS), "");
+ LLVMValueRef list = si_prolog_get_rw_buffers(ctx);
si_llvm_emit_polygon_stipple(ctx, list, pos);
}
diff --git a/src/gallium/drivers/radeonsi/si_shader.h b/src/gallium/drivers/radeonsi/si_shader.h
index 64321265cf9..a10067d025d 100644
--- a/src/gallium/drivers/radeonsi/si_shader.h
+++ b/src/gallium/drivers/radeonsi/si_shader.h
@@ -385,7 +385,14 @@ struct si_shader_selector {
/* Common VS bits between the shader key and the prolog key. */
struct si_vs_prolog_bits {
- unsigned instance_divisors[SI_MAX_ATTRIBS];
+ /* - If neither "is_one" nor "is_fetched" has a bit set, the instance
+ * divisor is 0.
+ * - If "is_one" has a bit set, the instance divisor is 1.
+ * - If "is_fetched" has a bit set, the instance divisor will be loaded
+ * from the constant buffer.
+ */
+ uint16_t instance_divisor_is_one; /* bitmask of inputs */
+ uint16_t instance_divisor_is_fetched; /* bitmask of inputs */
};
/* Common TCS bits between the shader key and the epilog key. */
diff --git a/src/gallium/drivers/radeonsi/si_state.c b/src/gallium/drivers/radeonsi/si_state.c
index a674a602e3a..7e3d1a02e07 100644
--- a/src/gallium/drivers/radeonsi/si_state.c
+++ b/src/gallium/drivers/radeonsi/si_state.c
@@ -3773,6 +3773,11 @@ static void *si_create_vertex_elements(struct pipe_context *ctx,
if (elements[i].instance_divisor) {
v->uses_instance_divisors = true;
v->instance_divisors[i] = elements[i].instance_divisor;
+
+ if (v->instance_divisors[i] == 1)
+ v->instance_divisor_is_one |= 1u << i;
+ else
+ v->instance_divisor_is_fetched |= 1u << i;
}
if (!used[vbo_index]) {
@@ -3901,6 +3906,16 @@ static void si_bind_vertex_elements(struct pipe_context *ctx, void *state)
v->uses_instance_divisors || /* we don't check which divisors changed */
memcmp(old->fix_fetch, v->fix_fetch, sizeof(v->fix_fetch[0]) * v->count)))
sctx->do_update_shaders = true;
+
+ if (v && v->instance_divisor_is_fetched) {
+ struct pipe_constant_buffer cb;
+
+ cb.buffer = NULL;
+ cb.user_buffer = v->instance_divisors;
+ cb.buffer_offset = 0;
+ cb.buffer_size = sizeof(uint32_t) * v->count;
+ si_set_rw_buffer(sctx, SI_VS_CONST_INSTANCE_DIVISORS, &cb);
+ }
}
static void si_delete_vertex_element(struct pipe_context *ctx, void *state)
diff --git a/src/gallium/drivers/radeonsi/si_state.h b/src/gallium/drivers/radeonsi/si_state.h
index c9e0770c7ba..ec28abaf9a4 100644
--- a/src/gallium/drivers/radeonsi/si_state.h
+++ b/src/gallium/drivers/radeonsi/si_state.h
@@ -115,6 +115,8 @@ struct si_vertex_elements
uint16_t first_vb_use_mask;
/* Vertex buffer descriptor list size aligned for optimal prefetch. */
uint16_t desc_list_byte_size;
+ uint16_t instance_divisor_is_one; /* bitmask of inputs */
+ uint16_t instance_divisor_is_fetched; /* bitmask of inputs */
};
union si_state {
@@ -182,6 +184,7 @@ enum {
SI_VS_STREAMOUT_BUF3,
SI_HS_CONST_DEFAULT_TESS_LEVELS,
+ SI_VS_CONST_INSTANCE_DIVISORS,
SI_VS_CONST_CLIP_PLANES,
SI_PS_CONST_POLY_STIPPLE,
SI_PS_CONST_SAMPLE_POSITIONS,
diff --git a/src/gallium/drivers/radeonsi/si_state_shaders.c b/src/gallium/drivers/radeonsi/si_state_shaders.c
index 4eb3b758b4e..af3f2a90e2a 100644
--- a/src/gallium/drivers/radeonsi/si_state_shaders.c
+++ b/src/gallium/drivers/radeonsi/si_state_shaders.c
@@ -1187,10 +1187,18 @@ static void si_shader_selector_key_vs(struct si_context *sctx,
if (!sctx->vertex_elements)
return;
+ prolog_key->instance_divisor_is_one =
+ sctx->vertex_elements->instance_divisor_is_one;
+ prolog_key->instance_divisor_is_fetched =
+ sctx->vertex_elements->instance_divisor_is_fetched;
+
+ /* Prefer a monolithic shader to allow scheduling divisions around
+ * VBO loads. */
+ if (prolog_key->instance_divisor_is_fetched)
+ key->opt.prefer_mono = 1;
+
unsigned count = MIN2(vs->info.num_inputs,
sctx->vertex_elements->count);
- memcpy(prolog_key->instance_divisors,
- sctx->vertex_elements->instance_divisors, count * 4);
memcpy(key->mono.vs_fix_fetch, sctx->vertex_elements->fix_fetch, count);
}